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首页> 外文期刊>Environmental microbiology >The LysR-type transcription factor PacR is a global regulator of photosynthetic carbon assimilation in Anabaena
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The LysR-type transcription factor PacR is a global regulator of photosynthetic carbon assimilation in Anabaena

机译:LysR型转录因子PacR是鱼腥藻中光合作用碳同化的全局调节剂

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摘要

Cyanobacteria perform water-splitting photosynthesis and are important primary producers impacting the carbon and nitrogen cycles at global scale. They fix CO2 through ribulose-bisphosphate carboxylase/oxygenase (RuBisCo) and have evolved a distinct CO2 concentrating mechanism (CCM) that builds high CO2 concentrations in the vicinity of RuBisCo favouring its carboxylase activity. Filamentous cyanobacteria such as Anabaena fix CO2 in photosynthetic vegetative cells, which donate photosynthate to heterocysts that rely on a heterotrophic metabolism to fix N-2. CCM elements are induced in response to inorganic carbon limitation, a cue that exposes the photosynthetic apparatus to photodamage by over-reduction. An Anabaena mutant lacking the LysR-type transcription factor All3953 grew poorly and dies under high light. The rbcL operon encoding RuBisCo was induced upon carbon limitation in the wild type but not in the mutant. ChIP-Seq analysis was used to globally identify All3953 targets under carbon limitation. Targets include, besides rbcL, genes encoding CCM elements, photorespiratory pathway- photosystem- and electron transport-related components, and factors, including flavodiiron proteins, with a demonstrated or putative function in photoprotection. Quantitative reverse transcription polymerase chain reaction analysis of selected All3953 targets showed regulation in the wild type but not in the mutant. All3953 (PacR) is a global regulator of carbon assimilation in an oxygenic photoautotroph.
机译:蓝细菌进行水分解光合作用,并且是影响全球范围内碳和氮循环的重要初级生产者。他们通过核糖二磷酸羧化酶/加氧酶(RuBisCo)固定CO2,并发展出独特的CO2浓缩机制(CCM),可在RuBisCo附近建立高浓度的CO2,从而有利于其羧化酶活性。丝状蓝细菌如鱼腥藻将光合作用的营养细胞中的CO2固定,该光合作用的光合作用细胞将CO2捐赠给依赖异养代谢来固定N-2的异质囊。 CCM元素是响应于无机碳限制而被诱导的,该提示使光合装置因过度还原而受到光害。缺乏LysR型转录因子All3953的Anabaena突变株生长较弱,在强光下死亡。在碳限制下,在野生型中而不是在突变体中诱导了编码RuBisCo的rbcL操纵子。 ChIP-Seq分析用于全局确定碳限制下的All3953目标。除rbcL外,靶标还包括编码CCM元素,光呼吸途径,光系统和电子运输相关成分的基因,以及包括黄素二铁蛋白在内的在光保护中已证明或推定功能的因子。选定的All3953靶标的定量逆转录聚合酶链反应分析显示,其在野生型中有调控,但在突变体中无调控。 All3953(PacR)是氧气自养生物中碳同化的全局调节剂。

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